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On the noise properties of linear and nonlinear quantum-dot semiconductor optical amplifiers: the impact of inhomogeneously broadened gain and fast carrier dynamics

机译:关于线性和非线性量子点半导体光放大器的噪声特性:增益非均匀加宽和快速载流子动力学的影响

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We present a detailed analytical model describing the noise properties of quantum-dot (QD) optical amplifiers operating in the linear and saturated regimes. We describe the dependence of the optical noise on the main physical parameters characterizing the QD gain medium as well as on operating conditions. The optical noise at the amplifier output shows a broad-band spectrum with an incoherent spectral hole due to the gain inhomogeneity. A coherent spectral dip stemming from noise-signal nonlinear interactions is superimposed on that broad-band spectrum. The broad-band incoherent component is also calculated using an approximate model which makes use of an equivalent inhomogeneous population inversion factor. The validity of the approximation is examined in detail. We also calculate the electrical relative intensity noise and observe a spectral hole corresponding to the spectral shape of the optical noise. The most important characteristics of the optical and electrical noise spectra are determined by the degree of inhomogeneous broadening and by the fast carrier dynamics of QD amplifiers. The fast dynamics causes a very wide noise spectral hole which has important potential consequences for detection of fast data and for all optical signal processing.
机译:我们提供了一个详细的分析模型,描述了在线性和饱和状态下工作的量子点(QD)光放大器的噪声特性。我们描述了光学噪声对表征QD增益介质的主要物理参数以及工作条件的依赖性。由于增益不均匀性,放大器输出端的光学噪声显示宽带光谱,且光谱孔不连贯。由噪声-信号非线性相互作用引起的相干频谱骤降被叠加在该宽带频谱上。宽带不相干分量也可以使用近似模型来计算,该模型利用等效的非均匀总体反演因子。详细检查了近似的有效性。我们还计算电相对强度噪声,并观察与光噪声的光谱形状相对应的光谱孔。光学和电子噪声频谱的最重要特征取决于不均匀加宽的程度以及QD放大器的快速载波动态。快速动态会产生一个非常宽的噪声频谱孔,这对于检测快速数据和所有光信号处理具有重要的潜在后果。

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